2004The Journal of BiochemistryRequires access

Analysis of Autodegradation Sites of Thermolysin and Enhancement of Its Thermostability by Modifying Leu155 at an Autodegradation Site

Yoshiki Matsumiya

Open publisher page 28 citations

Abstract

The relationship between the autodegradation and thermostability of thermolysin (TLN) was studied. Four autodegradation sites in TLN were identified in the presence of Ca(2+). One of the sites was identified as Gly(154)-Leu(155), and Leu(155) was substituted with various amino acids, X = Ala, Ser, Phe, and Gly, by site-directed mutagenesis. The thermostability at 80 degrees C increased with the amino acid substitutions in the order of Ala>Phe>Ser>Gly>Leu (WT TLN). An additional autodegradation fragment that was not observed with WT TLN appeared for all mutant TLNs examined. The autodegradation site shifted from the Gly(154)-Leu(155) bond to the X(155)-Ile(156) one with the mutation at Leu(155). Furthermore, the Ile(164)-Asp(165) bond was recognized newly as an autodegradation site in the mutant TLNs for the production of AF3'.

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What this paper is about

The relationship between the autodegradation and thermostability of thermolysin (TLN) was studied. Four autodegradation sites in TLN were identified in the presence of Ca(2+). One of the sites was identified as Gly(154)-Leu(155), and Leu(155) was substituted with various amino acids, X = Ala, Ser, Phe, and Gly, by site-directed mutagenesis. The thermostability at 80 degrees C increased with the amino acid substitutions in the order of Ala>Phe>Ser>Gly>Leu (WT TLN). An additional autodegradation fragment that was not observed with WT TLN appeared for all mutant TLNs examined. The autodegradation site shifted from the Gly(154)-Leu(155) bond to the X(155)-Ile(156) one with the mutation at Leu(155). Furthermore, the Ile(164)-Asp(165) bond was recognized newly as an autodegradation site in the mutant TLNs for the production of AF3'.

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Available abstract

The relationship between the autodegradation and thermostability of thermolysin (TLN) was studied. Four autodegradation sites in TLN were identified in the presence of Ca(2+). One of the sites was identified as Gly(154)-Leu(155), and Leu(155) was substituted with various amino acids, X = Ala, Ser, Phe, and Gly, by site-directed mutagenesis. The thermostability at 80 degrees C increased with the amino acid substitutions in the order of Ala>Phe>Ser>Gly>Leu (WT TLN). An additional autodegradation fragment that was not observed with WT TLN appeared for all mutant TLNs examined. The autodegradation site shifted from the Gly(154)-Leu(155) bond to the X(155)-Ile(156) one with the mutation at Leu(155). Furthermore, the Ile(164)-Asp(165) bond was recognized newly as an autodegradation site in the mutant TLNs for the production of AF3'.

Key concepts: Thermostability, Thermolysin, Mutant, Amino acid, Site-directed mutagenesis, Chemistry, Stereochemistry, Mutagenesis

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Analysis of Autodegradation Sites of Thermolysin and Enhancement of Its Thermostability by Modifying Leu155 at an Autodegradation Site — Research Paper | ScholarLens